CBSE Class 12 Chemistry NCERT Solutions: p-Block Elements
CBSE Class 12 Chemistry Chapter 7: p-Block Elements NCERT Solutions offer comprehensive explanations for this crucial topic. Students will find detailed solutions covering reactions of chlorides with sulfuric acid, qualitative analysis of copper ions, and the structure of cyclotrimetaphosphoric acid. The chapter also explores the concept of p-pi-d-pi bonding and the identification of isoelectronic and isostructural species. These solutions are crafted to provide clear, step-by-step guidance for all exercises, ensuring a thorough understanding of the p-block elements. This resource is an excellent tool for students aiming to strengthen their grasp of the chapter's concepts and excel in their examinations.
Quick info
| Board | CBSE |
|---|---|
| Class | Class 12 |
| Subject | Chemistry Exemplar |
| Session | 2026 |
| Language | English |
| Type | NCERT Solutions |
| Chapter | Chapter 7 |
Chapter summary
Chapter 7 of the Class 12 Chemistry syllabus, 'p-Block Elements', is explored through these NCERT Solutions. The solutions address multiple-choice questions related to the reactivity of halides with sulfuric acid, the identification of metal ions through qualitative analysis involving hydrogen sulfide and nitric acid, the bonding and structure of inorganic compounds like cyclotrimetaphosphoric acid, and the principles of p-pi-d-pi bonding. It also covers the identification of isoelectronic and isostructural species, crucial for understanding chemical periodicity and bonding.
Learning outcomes
- Understand the reactions of halide salts with concentrated sulfuric acid.
- Analyze the steps involved in qualitative analysis of metal ions using H2S and HNO3.
- Determine the number of single and double bonds in inorganic molecules like cyclotrimetaphosphoric acid.
- Identify elements capable of forming p-pi-d-pi bonds.
- Compare and identify isoelectronic and isostructural species.
- Explain the formation of complex ions in solution.
Topics covered
Paper topics
- Reactions of concentrated H₂SO₄ with halides
- Qualitative analysis of copper ions
- Formation of metal sulfides
- Oxidation by nitric acid
- Ammonia complex formation
- Structure of cyclotrimetaphosphoric acid
- Sigma and pi bonds
- pπ - dπ bonding
- Isoelectronic species
- Isostructural species
- Hybridization
- p-Block elements
Important topics
- Qualitative analysis procedures and observations
- pπ - dπ bonding capabilities
- Identifying isoelectronic and isostructural species
- Structure and bonding in oxyacids of phosphorus
- Redox reactions involving sulfuric acid and halides
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Questions and Solutions
Multiple Choice Questions (MCQs) - Question 1
- reduces HI to
- HI is of violet colour
- HI gets oxidised to
- HI changes to
Multiple Choice Questions (MCQs) - Question 2
- deep blue precipitate of Cu (OH)₂
- deep blue solution of
- deep blue solution of
- deep blue solution of
Multiple Choice Questions (MCQs) - Question 3
- 3 double bonds; 9 single bonds
- 6 double bonds; 6 single bonds
- 3 double bonds; 12 single bonds
- Zero double bond; 12 single bonds
Multiple Choice Questions (MCQs) - Question 4
- Carbon
- Nitrogen
- Phosphorus
- Boron
Multiple Choice Questions (MCQs) - Question 5
- ,
- ,
- ,
- ,
Common mistakes
- Confusing oxidizing and reducing properties of acids and their reaction products.
- Incorrectly identifying the products of precipitation and complex formation in qualitative analysis.
- Miscounting sigma and pi bonds in complex inorganic structures.
- Difficulty in recognizing the conditions required for p-pi-d-pi bonding.
- Errors in calculating the total number of electrons for isoelectronic species.
Revision tips
- Review the redox reactions between concentrated sulfuric acid and halides.
- Memorize the characteristic reactions and observations in qualitative analysis for common ions.
- Practice drawing Lewis structures to determine bond types and hybridization.
- Focus on understanding the electronic configurations that enable p-pi-d-pi bonding.
- Work through examples of isoelectronic and isostructural species to solidify the concept.
Practice MCQs
Q1. On adding concentrated H₂SO₄ to a chloride salt, colorless fumes are evolved, but on adding it to an iodide salt, violet fumes are observed. What is the reason for this difference?
Explanation: Hydrogen iodide (HI) is a stronger reducing agent than H₂SO₄. Therefore, HI reduces H₂SO₄ to SO₂ and is itself oxidized to iodine (I₂), which produces violet fumes. The reaction is: H₂SO₄ + 2HI → SO₂ + I₂ + 2H₂O.
Q2. In qualitative analysis, a black precipitate is formed when H₂S is passed through an aqueous solution of a salt acidified with dil. HCl. This precipitate dissolves in dil. HNO₃ to form a blue solution. What is the final observation upon adding excess aqueous ammonia to this blue solution?
Explanation: The black precipitate is likely CuS. When dissolved in HNO₃, it forms Cu(NO₃)₂. Addition of excess ammonia to the Cu(NO₃)₂ solution forms the deep blue tetraamminecopper(II) complex ion, [Cu(NH₃)₄]²⁺.
Q3. How many single and double bonds are present in one molecule of cyclotrimetaphosphoric acid (H₃P₃O₉)?
Explanation: A molecule of cyclotrimetaphosphoric acid (H₃P₃O₉) has a ring structure with alternating phosphorus and oxygen atoms. Each phosphorus atom is bonded to two other phosphorus atoms and two oxygen atoms. The structure contains three P=O double bonds and nine P-O single bonds within the ring and P-OH groups.
Q4. Which of the following elements is capable of forming pπ - dπ bonding?
Explanation: Phosphorus has vacant d-orbitals in its valence shell, which allows it to participate in pπ - dπ bonding. Carbon and nitrogen do not have accessible d-orbitals, and boron typically forms pπ - pπ bonds or coordinate bonds.
Q5. Which pair of ions are both isoelectronic and isostructural?
Explanation: Both CO₃²⁻ and NO₃⁻ have 32 electrons and exhibit a trigonal planar structure due to sp² hybridization of the central atom (C or N), making them isoelectronic and isostructural.
Frequently asked questions
What is the significance of p-pi-d-pi bonding in p-block elements?
p-pi-d-pi bonding occurs when an element with a p-orbital containing lone pairs overlaps with an empty d-orbital of another atom. This type of bonding is important for elements like phosphorus, enabling them to form stable compounds with specific structures and reactivities.
How can we determine if two ions are isoelectronic and isostructural?
Isoelectronic species have the same total number of electrons. Isostructural species have the same arrangement of atoms and the same number of bonds and lone pairs. Both conditions must be met for ions to be considered isoelectronic and isostructural.
What is the role of concentrated H₂SO₄ in the reaction with iodide salts?
Concentrated sulfuric acid acts as an oxidizing agent. When reacting with iodide salts, it oxidizes the iodide ion (I⁻) to iodine (I₂), which is observed as violet fumes. Sulfuric acid itself is reduced, typically to SO₂.
Explain the formation of the deep blue color in the qualitative analysis of copper ions.
The deep blue color observed is due to the formation of the tetraamminecopper(II) complex ion, [Cu(NH₃)₄]²⁺. This complex forms when copper(II) ions react with excess aqueous ammonia.
How are the bonds in cyclotrimetaphosphoric acid determined?
The structure of cyclotrimetaphosphoric acid (H₃P₃O₉) is determined by drawing its Lewis structure, which reveals three P=O double bonds and nine P-O single bonds, along with the P-OH bonds.
Are these NCERT solutions suitable for exam revision?
Yes, these solutions provide clear, step-by-step explanations for complex problems, helping students understand the underlying concepts and methods, which is ideal for revising the p-Block Elements chapter for exams.
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